不同光质对杉木组培苗生根的影响及其机理初探
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国家重点研发项目(2016YFD0600301);


Effect of Different Light Qualities on Rooting of Tissue Cultured Cunninghamia lanceolata Seedlings and Its Mechanism
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    摘要:

    以杉木优良无性系‘洋020’组培苗为材料,比较不同光质组合处理对组培苗生根的影响,以筛选出最适宜杉木组培苗生根的光质配比;进一步以白光为对照,并结合生根率最低和最高的处理,分析不同处理间组培苗生长、光合色素含量、叶绿素荧光学参数、内源性激素含量及叶绿体超微结构的差异,以揭示不同光质组合介导的组培苗生根和生长的调控机理,为杉木组培苗工厂化生产提供理论依据。结果表明:(1) 不同光质组合条件下,以红蓝光质组合处理(红∶蓝=3∶1)杉木组培苗的生根率最高(71.11%),较白光对照显著提高45.61%,而蓝光处理生根率最低(12.50%)。(2) 红蓝光质组合处理组培苗生物量和株高均高于白光对照和蓝光处理,且不同处理间株高存在显著差异(P<0.05)。(3)与对照和蓝光处理相比,红蓝光质组合处理组培苗叶片的光合色素含量和PSⅡ潜在光化学效率Fv/Fo值均显著提高,暗示该处理叶片具有较强光源捕获能力和光能利用能力。(4) 叶绿体超微结构观察显示,红蓝光质组合处理的组培苗叶绿体淀粉粒数量少,体积小,且叶绿体基质和基粒片层结构清晰,有利于同化产物输出。(5)红蓝光质组合处理的组培苗具有较高的生根率与其具有较高的生长素(IAA)、较低的细胞分裂素(CTK) 含量以及较高的IAA/CTK比值有关,而具有较高的株高与其较高的赤霉素(GA)和IAA含量、较低的ABA含量以及较高IAA/ABA、GA/ABA比值有关。

    Abstract:

    In order to select the most suitable light quality ratio for the rooting of Cunninghamia lanceolata tissue cultured seedlings, we investigated the effects of different light quality treatments on the rooting rates of tissue cultured seedlings by using the superior clone of C. lanceolata ‘Yang 020’. And then, the differences of seedling growth, photosynthetic pigment content, chlorophyll fluorescence parameters, endogenous hormone content and chloroplast ultrastructure among the white light (control) treatment and the light quality treatments with highest and lowest rooting rates were analyzed, revealing the regulatory mechanism of rooting and growth of tissue cultured seedlings mediated by different light qualities, thus, providing theoretical basis for the factory production of C. lanceolata tissue culture seedlings. The results showed that: (1) under different light quality combination conditions, the rooting rate of seedlings treated with the combination of red and blue light, more specifically, red∶blue=3∶1 (R3B1) was the highest (71.11%), which is 45.61% higher than that of white light control, while the rooting rate of seedlings treated with blue light is the lowest (12.50%). (2) The biomass and plant height of seedlings under red and blue light treatment (R3B1) were higher than those of control and blue light treatments, and there was significant differences in plant height among different treatments (P<0.05). (3) The photosynthetic pigment content and PSⅡ potential photochemical efficiency Fv/Fo value of seedlings in red and blue light (R3B1) treatment were significantly higher than control and blue light treatments, suggesting leaves may have strong light source capturing ability and light energy utilization ability. (4) The ultrastructure of chloroplast results showed that the number and size of chloroplast starch grains in the leaves of seedling treated with the combination of red and blue light (R3B1) was small and the structure of chloroplast matrix and grana lamella was clear, which might favorable for the output of assimilation products. (5) The higher rooting rate of the seedlings treated with the combination of red and blue light (R3B1) was associated with higher auxin (IAA), lower cytokinin (CTK) content and higher IAA/CTK ratio in its shoots, while the higher plant height was associated with higher gibberelins (GA), IAA contents, IAA/ABA and GA/ABA ratios, and lower ABA content in its shoots.

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唐 银,李玲燕,许珊珊,等.不同光质对杉木组培苗生根的影响及其机理初探[J].西北植物学报,2022,42(4):609-618

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  • 在线发布日期: 2022-05-18
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